Li Faming, Wu Dan, Shang Le, Xia Rui, Zhang Hengrui, Huang Zhengxin, Gong Jue, Mao Lin, Zhang Hao, Sun Yinqing, Yang Tian, Sun Xianggang, Feng Zhiqiang, Liu Mingzhen
School of Materials and Energy, University of Electronic Science and Technology of China, Chengdu, 611731, P. R. China.
State Key Laboratory of PV Science and Technology, Trina Solar, ChangZhou, 213031, P. R. China.
Adv Mater. 2024 Apr;36(16):e2311595. doi: 10.1002/adma.202311595. Epub 2024 Jan 14.
Wide-bandgap metal halide perovskites have demonstrated promise in multijunction photovoltaic (PV) cells. However, photoinduced phase segregation and the resultant low open-circuit voltage (V) have greatly limited the PV performance of perovskite-based multijunction devices. Here, a alloying strategy is reported to achieve uniform distribution of triple cations and halides in wide-bandgap perovskites by doping Rb and Cl with small ionic radii, which effectively suppresses halide phase segregation while promoting the homogenization of surface potential. Based on this strategy, a V of 1.33 V is obtained from single-junction perovskite solar cells, and a V approaching 3.0 V and a power conversion efficiency of 25.0% (obtained from reverse scan direction, certified efficiency: 24.19%) on an 1.04 cm photoactive area can be achieved in a perovskite/perovskite/c-Si triple-junction tandem cell, where the certification efficiency is by far the greatest performance of perovskite-based triple-junction tandem solar cells. This work overcomes the performance deadlock of perovskite-based triple-junction tandem cells by setting a materials-by-design paradigm.
宽带隙金属卤化物钙钛矿在多结光伏(PV)电池中已展现出应用前景。然而,光致相分离以及由此产生的低开路电压(V)极大地限制了基于钙钛矿的多结器件的光伏性能。在此,报道了一种合金化策略,通过掺杂具有小离子半径的Rb和Cl,实现宽带隙钙钛矿中三阳离子和卤化物的均匀分布,这有效地抑制了卤化物相分离,同时促进了表面电势的均匀化。基于此策略,单结钙钛矿太阳能电池获得了1.33 V的开路电压,在1.04 cm²的光活性面积上制备的钙钛矿/钙钛矿/c-Si三结串联电池中可实现接近3.0 V的开路电压和25.0% 的功率转换效率(从反向扫描方向获得,认证效率:24.19%),其认证效率是目前基于钙钛矿的三结串联太阳能电池的最佳性能。这项工作通过建立一种按设计选材范式克服了基于钙钛矿的三结串联电池的性能瓶颈。